Measurement of phase modulation time dynamics of liquid crystal spatial light modulator

T. Z. Minikhanov, E. Zlokazov, R. S. Starikov, P. Cheremkhin
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Abstract

Liquid crystal spatial light modulators for precise dynamic manipulation of coherent light fields, used in diffractive optoelectronic optical data processing systems, are considered. This paper presents the results of a study of the temporal dynamics of the HoloEye PLUTO-2 VIS-016 liquid crystal spatial light modulator for analysis of light fields rate modulation. Experiments using binary phase computer generated holograms and binary focusing phase diffractive optical elements were conducted. Based on experimental data, the time characteristics of the modulator response were determined. It was found that when the rise time of the diffraction efficiency was 146 ms after the hologram displaying onto the SLM, and when switching to a new hologram, the decay time was 97 ms. These results allowed the dynamic generation of an alternating holograms at a refresh rate of 2 Hz with an interference level of –16 dB. Increasing the frequency of fringe pattern updates increases the level of interframe noise in the generated holograms, and when updated at the specification frequency, the generated distributions cannot be separated. Determining the actual frame rate based on the rise and decay times of the diffraction efficiency makes it possible to correctly calculate the minimum operating time of an information optical system containing a liquid crystal spatial light modulator.
液晶空间光调制器的相位调制时间动态测量
本文研究了用于衍射光电光学数据处理系统的相干光场精确动态操控的液晶空间光调制器。本文介绍了 HoloEye PLUTO-2 VIS-016 液晶空间光调制器的时间动态研究成果,用于分析光场速率调制。使用二进制相位计算机生成的全息图和二进制聚焦相位衍射光学元件进行了实验。根据实验数据,确定了调制器响应的时间特性。结果发现,当全息图显示到 SLM 上后,衍射效率的上升时间为 146 毫秒,当切换到新的全息图时,衰减时间为 97 毫秒。这些结果允许以 2 Hz 的刷新率动态生成交替全息图,干扰水平为 -16 dB。提高条纹图案的更新频率会增加生成的全息图中的帧间噪声水平,当以规定频率更新时,生成的分布无法分离。根据衍射效率的上升和衰减时间来确定实际帧频,可以正确计算出包含液晶空间光调制器的信息光学系统的最短工作时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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